Browsing by Titles

Showing results 1 to 8 of 8

  • Peera, S. Gouse
  • Tintula, K. K.
  • Sahu, A. K.
  • Shanmugam, S.
  • Sridhar, P.
  • Pitchumani, S.
  • 2013-10-01
  • Peera, S. Gouse. (2013-10-01). Catalytic activity of Pt anchored onto graphite nanofiber-poly (3,4-ethylenedioxythiophene) composite toward oxygen reduction reaction in polymer electrolyte fuel cells. Electrochimica Acta, 108, 95–103. doi: 10.1016/j.electacta.2013.06.098
  • Elsevier Ltd
  • View : 1075
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  • Appiah, Williams Agyei
  • Dzakpasu, Cyril Bubu
  • Lee, Hyejin
  • Lee, Hochun
  • Lee, Yong Min
  • 2021-02
  • Appiah, Williams Agyei. (2021-02). Effect of electrolyte concentration on electrochromic performance of sputtered tungsten oxide film: Experiments and simulation. Electrochimica Acta, 369, 137699. doi: 10.1016/j.electacta.2020.137699
  • Pergamon Press Ltd.
  • View : 666
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  • 2014-08-10
  • Shanmugam, Sangaraju. (2014-08-10). Enhanced Oxygen Reduction Activities of Pt Supported on Nitrogen-Doped Carbon Nanocapsules. Electrochimica Acta, 137, 41–48. doi: 10.1016/j.electacta.2014.05.145
  • Elsevier Ltd
  • View : 830
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  • Sorcar, Saurav
  • Razzaq, Abdul
  • Tian, Haining
  • Grimes, Craig A.
  • In, Su Il
  • 2017-02
  • Sorcar, Saurav. (2017-02). Facile electrochemical synthesis of anatase nano-architectured titanium dioxide films with reversible superhydrophilic behavior. Journal of Industrial and Engineering Chemistry, 46, 203–211. doi: 10.1016/j.jiec.2016.10.032
  • 한국공업화학회
  • View : 914
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  • Noh, Seung Hyo
  • Seo, Min Ho
  • Seo, Joon Kyo
  • Fischer, Peter
  • Han, Byungchan
  • 2013-09
  • Noh, Seung Hyo. (2013-09). First principles computational study on the electrochemical stability of Pt-Co nanocatalysts. Nanoscale, 5(18), 8625–8633. doi: 10.1039/c3nr02611f
  • Royal Society of Chemistry
  • View : 1082
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  • Seo, Joon Kyo
  • Khetan, Abhishek
  • Seo, Min Ho
  • Kim, Hasuck
  • Han, Byungchan
  • 2013-09-15
  • Seo, Joon Kyo. (2013-09-15). First-principles thermodynamic study of the electrochemical stability of Pt nanoparticles in fuel cell applications. Journal of Power Sources, 238, 137–143. doi: 10.1016/j.jpowsour.2013.03.077
  • Elsevier Ltd
  • View : 1026
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  • 2022-04
  • Vinothkannan, Mohanraj. (2022-04). Porous gC(3)N(4)-Gd2Zr2O7 enables the high-temperature operation of Nafion membranes in polymer electrolyte fuel cells over 500 hours. Journal of Materials Chemistry A, 10(16), 8975–8988. doi: 10.1039/d2ta00483f
  • Royal Society of Chemistry
  • View : 354
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  • 2021-10
  • Tsipoaka, Maxwell. (2021-10). Ti2Zr2O8 nanotube as an additive in the fuel cell membrane and catalyst layer for improved low humidity operation. Journal of Power Sources, 509, 230386. doi: 10.1016/j.jpowsour.2021.230386
  • Elsevier BV
  • View : 398
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